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Authors = Sheng-Hong Tseng

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SHENG (983) , HONG (2802) , TSENG (176)

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Open AccessReview HDAC Inhibitors and RECK Modulate Endoplasmic Reticulum Stress in Tumor Cells
Int. J. Mol. Sci. 2017, 18(2), 258; doi:10.3390/ijms18020258
Received: 29 December 2016 / Revised: 22 January 2017 / Accepted: 23 January 2017 / Published: 26 January 2017
Cited by 1 | Viewed by 736 | PDF Full-text (440 KB) | HTML Full-text | XML Full-text
Abstract
In the tumor microenvironment hypoxia and nutrient deprived states can induce endoplasmic reticulum (ER) stress. If ER stress is not relieved, the tumor cells may become apoptotic. Therefore, targeting ER homeostasis is a potential strategy for cancer treatment. Various chemotherapeutic agents including histone
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In the tumor microenvironment hypoxia and nutrient deprived states can induce endoplasmic reticulum (ER) stress. If ER stress is not relieved, the tumor cells may become apoptotic. Therefore, targeting ER homeostasis is a potential strategy for cancer treatment. Various chemotherapeutic agents including histone deacetylase (HDAC) inhibitors can induce ER stress to cause cell death in cancers. Some HDAC inhibitors can prevent HDAC from binding to the specificity protein 1-binding site of the promoter of reversion-inducing cysteine-rich protein with Kazal motifs (RECK) and up-regulate RECK expression. Up-regulation of RECK expression by HDAC inhibitors has been observed in various cancer types. RECK is a tumor and metastasis suppressor gene and is critical for regulating tumor cell invasiveness and metastasis. RECK also modulates ER stress via binding to and sequestering glucose-regulated protein 78 protein, so that the transmembrane sensors, such as protein kinase RNA-like ER kinase are released to activate eukaryotic translational initiation factor 2α phosphorylation and enhance ER stress. Therefore, HDAC inhibitors may directly induce ER stress or indirectly induce this stress by up-regulating RECK in cancer cells. Full article
(This article belongs to the Special Issue Modulators of Endoplasmic Reticulum Stress 2016)
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Open AccessReview The Potential of Tetrandrine as a Protective Agent for Ischemic Stroke
Molecules 2011, 16(9), 8020-8032; doi:10.3390/molecules16098020
Received: 25 August 2011 / Revised: 15 September 2011 / Accepted: 15 September 2011 / Published: 16 September 2011
Cited by 13 | Viewed by 3605 | PDF Full-text (368 KB)
Abstract
Stroke is one of the leading causes of mortality, with a high incidence of severe morbidity in survivors. The treatment to minimize tissue injury after stroke is still unsatisfactory and it is mandatory to develop effective treatment strategies for stroke. The pathophysiology of
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Stroke is one of the leading causes of mortality, with a high incidence of severe morbidity in survivors. The treatment to minimize tissue injury after stroke is still unsatisfactory and it is mandatory to develop effective treatment strategies for stroke. The pathophysiology of ischemic stroke is complex and involves many processes including energy failure, loss of ion homeostasis, increased intracellular calcium level, platelet aggregation, production of reactive oxygen species, disruption of blood brain barrier, and inflammation and leukocyte infiltration, etc. Tetrandrine, a bisbenzylisoquinoline alkaloid, has many pharmacologic effects including anti-inflammatory and cytoprotective effects. In addition, tetrandrine has been found to protect the liver, heart, small bowel and brain from ischemia/reperfusion injury. It is a calcium channel blocker, and can inhibit lipid peroxidation, reduce generation of reactive oxygen species, suppress the production of cytokines and inflammatory mediators, inhibit neutrophil recruitment and platelet aggregation, which are all devastating factors during ischemia/reperfusion injury of the brain. Because tetrandrine can counteract these important pathophysiological processes of ischemic stroke, it has the potential to be a protective agent for ischemic stroke. Full article
(This article belongs to the Special Issue Alkaloids: Novel Therapeutic Perspectives)

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